Coe Bradley P, Ylstra Bauke, Carvalho Beatriz, Meijer Gerrit A, Macaulay Calum, Lam Wan L
British Columbia Cancer Research Centre, 675 West 10th Avenue, Vancouver, BC, Canada V5Z 1L3.
Genomics. 2007 May;89(5):647-53. doi: 10.1016/j.ygeno.2006.12.012. Epub 2007 Feb 2.
Many recent technologies have been designed to supplant conventional metaphase CGH technology with the goal of refining the description of segmental copy number status throughout the genome. However, the emergence of new technologies has led to confusion as to how to describe adequately the capabilities of each array platform. The design of a CGH array can incorporate a uniform or a highly variable element distribution. This can lead to bias in the reporting of average or median resolutions, making it difficult to provide a fair comparison of platforms. In this report, we propose a new definition of resolution for array CGH technology, termed "functional resolution," that incorporates the uniformity of element spacing on the array, as well as the sensitivity of each platform to single-copy alterations. Calculation of these metrics is automated through the development of a Java-based application, "ResCalc," which is applicable to any array CGH platform.
许多最新技术旨在取代传统的中期比较基因组杂交(CGH)技术,目的是更精确地描述全基因组片段拷贝数状态。然而,新技术的出现导致了在如何充分描述每个阵列平台的能力方面出现了混乱。CGH阵列的设计可以采用均匀或高度可变的元件分布。这可能导致在报告平均或中位数分辨率时出现偏差,从而难以对各平台进行公平比较。在本报告中,我们提出了一种用于阵列CGH技术的分辨率新定义,称为“功能分辨率”,它纳入了阵列上元件间距的均匀性以及每个平台对单拷贝改变的敏感性。通过开发一个基于Java的应用程序“ResCalc”实现了这些指标的自动化计算,该应用程序适用于任何阵列CGH平台。